MTC2S0503MC3 MURATA-PS | Alldatasheet

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Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 1 of 17 www.murata.com For full details go to https://www.murata.com/en- global/products/power/rohs www.murata.com SELECTION GUIDE Order Code1 Input Voltage Output Voltage Output Current Rated Input Current Efficiency Ripple and Noise MTTF2 V V mA mA % % mVp/p mVp/p kHrs kHrs MTC2S0503MC3 5 3.3 606 550 70 73 75 120 1270 2371 MTC2S0505MC3 5 5 400 530 71 76 90 120 1287 2670 MTC2S0512MC3 5 12 167 510 74 78.5 75 120 1170 2106 MTC2S1203MC 12 3.3 606 210 76 78.5 40 50 1085 2704 MTC2S1205MC 12 5 400 210 77 80 45 60 1067 3260 MTC2S1212MC 12 12 167 200 81 83.5 45 60 1067 3004 MTC2S2403MC 24 3.3 606 110 75 78.5 55 75 946 2540 MTC2S2405MC 24 5 400 100 76 79.5 35 55 854 2275 MTC2S2412MC 24 12 167 100 78 81.5 50 70 964 2424 INPUT CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Voltage range 5V input types 4.5 5 9 V12V input types 9 12 18 24V input types 18 24 36 Input reflected ripple current 5V input types 20 mA p-pAll other variants 4 ISOLATION CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Isolation test voltage Production tested for 1 second 3000 VACQualification tested for 1 minute 3000 Isolation capacitance All variants 20 pF Resistance Viso = 1kVDC 1 GΩ Safety Standard UL60950-1 Reinforced Creepage and clear- ance 5mm 250 VACANSI/AAMI ES60601-1 1 MOPP/2 MOOP 250 OUTPUT CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Rated power All output types 2 W Minimal load to meet datasheet specification 10 % Voltage set point accuracy 5V input types -2.5 2 %All other input types ±2 Line regulation Low line to high line 0503, 0505 & 0512 ±0.05 ±0.2 All other variants ±0.5 Load regulation All output types 0503 ±0.1 ±0.2 All other variants ±0.5 Components are supplied in tape and reel packaging, please refer to package specification section. Orderable part numbers are MTC2SXXXXMC-R7 (30 pieces per reel), or MTC2SXXXXMC-R13 (150 pieces per reel) 2. Calculated using MIL-HDBK-217 FN2 and Telecordia SR-332 calculation model with nominal input voltage at full load. 3. MTC2S05xxMC variants are currently pending recognition to UL62368-1 as UL60950 is superseded by UL62638. 4. ANSI/AAMI ES60601-1 recognition is currently pending for MTC2S05xxMC. All specifications typical at TA=25°C, nominal input voltage and rated output current unless otherwise specified.

FEATURES

„UL60950 recognised for reinforced insula tion „ANSI/AAMI ES60601-1, 1 MOPP/ 2 MOOPs recognised 4 „3kVAC isolation test voltage ‘Hi Pot Test’ „Continuous short circuit protection „Output voltage trim „Remote on/off pin „No electrolytic capacitors „Operation up to 105°C (with derating) „2:1 input range PRODUCT OVERVIEW The MTC2 series of miniature surface mount DC-DC converters offers a single output voltage from input voltage ranges of 4.5-9V, 9-18V and 18-36V. The MTC2 series regulated output voltage is adjustable by ±10% and a remote on/off pin is also inc luded for application power saving. The MTC2 ideally suited to applications which include medical. Industrial, telecommunications, battery powered systems, and process automa- tion.

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 2 of 17 www.murata.com GENERAL CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Switching frequency 0503 135 kHz 0505 115 0512 140 1203 285 1205, 1212 260 2403 185 2405 225 2412 240 Remote on/off pin Module on, pin unconnected or open collector floating Module off (refer to application notes) 3.3V output types 3 V5V & 12V output types 2 5V input types 0.25 mW 1203, 1205 1.4 1212 1.5 2403, 2405 3.9 2412 4.2 TEMPERATURE CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Operation All output types (see derating curves) -40 105 °CStorage -50 125 Case temperature above ambient 100% Load, Nom V IN, Still Air 22 ABSOLUTE MAXIMUM RATINGS Short-circuit protection (for SELV input voltages) Continuous Remote on/off pin input voltage1 12V Input voltage, MTC2 5V input types 15V Input voltage, MTC2 12V input types 25V Input voltage, MTC2 24V input types 40V 1. Provided that external control circuit is the same as application note on page 5. OUTPUT CHARACTERISTICS (Continued) Parameter Conditions Min. Typ. Max. Units Transient response Peak deviation (25-75% & 75-25% swing) 3.3V output types ±8 %Vout 12V output types ±2 0503 ±4 0505 ±4.5 0512 ±1.5 1205 ±6 2405 ±5 Settling time (1% V out Nom.) 0503 420 μs 0505 1000 0512 180 1203 45 1205 80 1212 60 2403 55 2405 75 2412 100

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 3 of 17 www.murata.com TECHNICAL NOTES ISOLATION VOLTAGE ‘Hi Pot Test’, ‘Flash Tested’, ‘Withstand Voltage’, ‘Proof Voltage’, ‘Dielectric Withstand Voltage’ & ‘Isolation Test Voltage’ are all terms that relate to the same thing, a test voltage, applied for a specified time, across a component designed to provide electrical isolation, to verify the integrity of that isolation. Murata Power Solutions MTC2 series of DC-DC converters are all 100% production tested at 3kVAC for 1 second and have been qualification tested at 3kVAC for 1 minute. A question commonly asked is, “What is the continuous voltage that can be applied across the part in normal operation?” The MTC2 series has been recognised by Underwriters Laboratory to 250Vrms for Reinforced Insulation. REPEATED HIGH-VOLTAGE ISOLATION TESTING It is well known that repeated high-voltage isolation testing of a barrier component can actually degrade isolation capability, to a lesser or greater degree depending on materials, construction and environment. We therefore strongly advise against repeated high voltage isolation testing, but if it is absolutely required, that the voltage be reduced by 20% from specified test voltage. SAFETY APPROVAL ANSI/AAMI ES60601-1 The MTC2 series has been recognised by Underwriters Laboratory (UL) to ANSI/AAMI ES60601-1 and provides 1 MOPP (Means Of Patient Protection) and 2 MOOP (Means Of Operator Protection) based upon a working voltage of 250 Vrms max., between Primary and Secondary. The MTC2S05xxMC variants are currently pending recognition. File number E202895 applies. UL 60950 The MTC2 series has been recognised by Underwriters Laboratory (UL) to UL 60950 for reinforced insulation to a working voltage of 250 Vrms with a maximum measured product operating temperature of 105°C. File number E151252 applies. Creepage and clearance 5 mm. FUSING The MTC2 Series of converters are not internally fused so to meet the requirements of UL an anti-surge input line fuse should always be used with ratings as defined below. Input Voltage, 5V: 0.91A (Fuse value is pending Underwriters Laboratory (UL) confirmation.) Input Voltage, 12V: 0.75A Input Voltage, 24V: 0.5A All fuses should be UL recognised and rated to at least the maximum allowable DC input voltage. RoHS COMPLIANCE, MSL AND PSL INFORMATION This series is compatible with Pb-Free soldering systems and is also backward compatible with Sn/Pb soldering systems. The MTC2 series has a process, moisture, and reflow sensitivity classification of MSL2 PSL R7F as defined in J-STD-020 and J-STD-075. This translates to: MSL2 = 1 year floor life, PSL R7F = Peak reflow temperature 245°C with a limitation on the time above liquidus (217°C) which for this series is 90 sec max. Please refer to application notes for further information. The pin termination finish on this product series is Gold with Nickel Pre-plate. PART NUMBER STRUCTURE MTC 2 S XX XX M C -RXX Series name Power rating Output type S - Single D - Dual RoHS compliant Package type S - SIP D - DIP M - Surface mount Z - ZIP Output voltage Input voltage Packaging code R7 - 7 inch reel R13 - 13 inch reel

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 4 of 17 www.murata.com ENVIRONMENTAL VALIDATION TESTING The following tests have been conducted on this product series, please contact Murata if further information about the tests is required. Test Standard Condition Temperature cycling MIL-STD-883 1010, Condition B 10 cycles between two chambers set to achieve -55°C and +125°C.The dwell time shall not be less than 10min and the load shall reach the specified temperature in 15min. HAST (biased) JEDEC JESD22-A110 96Hrs +2/-0Hrs at 130°C ± 2°C, 85% ± 5% R.H. High temperature storage life JEDEC JESD22-A103, Condition A 125°C +10/-0°C for ≥1000 hours Vibration BS EN 61373 with respect to BS EN 60068-2-64, Test Fh Category 1 Class B 5 – 150Hz. Level at each axis – Vertical, Traverse and Longitudinal: 5.72m/s2 rms. 5 hours in each axis. Crest factor: 3 Sigma. Device is secured via pins. Shock BS EN 61373: Category 1 Class B Test is 30ms duration, 3 shocks in each sense of 3 mutually perpendicular axes (18 shocks total). Level at each axis as follows: Vertical, Traverse and Longitudinal: 50m/s2. Device is secured via pins. Solderability IPC/ECA J-STD-002, Test A and A1 SnPb (Test A): For lead free solderability, 5 off Parts conditioned to a 48hour dry bake at 125°C followed by 4 hours at 155°C and 5 off Parts conditioned to 96hours at 125°C. All 10 Dipped in solder at 245°C ±5°C for 5 +0/-0.5 seconds. Pb-free (Test A1): For leaded solderability, 5 off Parts conditioned to a 48hour dry bake at 125°C followed by 4 hours at 155°C and 5 off Parts conditioned to 96hours at 125°C. All 10 Dipped in solder at 255°C ±5°C for 5 +0/-0.5 seconds. Solvent cleaning Resistance to cleaning agents Solvent – Novec 71IPA & Topklean EL-20A. Pulsed ultrasonic immersion 45°C- 65°C Solvent resistance MIL-STD-883, Method 2015 The parts and the bristle portion of the brush are immersed in Isopropanol for a minimum of 1 minute. The parts are brushed 3 times, after the third time the parts are blown dry and inspected.

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 5 of 17 www.murata.com CHARACTERISATION TEST METHODS Ripple & Noise Characterisation Method Ripple and noise measurements are performed with the following test configuration. C1 1μF X7R multilayer ceramic capacitor, voltage rating to be a minimum of 3 times the output voltage of the DC-DC converter C2 10μF tantalum capacitor, voltage rating to be a minimum of 1.5 times the output voltage of the DC-DC converter with an ESR of less than 100mΩ at 100 kHz C3 100nF multilayer ceramic capacitor, general purpose R1 450Ω resistor, carbon film, ±1% tolerance R2 50Ω BNC termination T1 3T of the coax cable through a ferrite toroid RLOAD Resistive load to the maximum power rating of the DC-DC converter. Connections should be made via twisted wires Measured values are multiplied by 10 to obtain the specified values. Differential Mode Noise Test Schematic OSCILLOSCOPE YI N P U T SUPPLY C1 C2 C3 R1 T1 R2 Input Output DC/DC Converter RL O A D + + APPLICATION NOTES Maximum Output Capacitance Output Voltage Maximum Load Capacitance Vμ F 3.3 470 5 470 12 220 Start-up times Part No. Start-up times ms MTC2S0503MC 12 MTC2S0505MC 20 MTC2S0512MC 37 MTC2S1203MC 3 MTC2S1205MC 10.5 MTC2S1212MC 31 MTC2S2403MC 7 MTC2S2405MC 12 MTC2S2412MC 21 Typical start up times for this series, with a typical input voltage rise time of 2.2μs and output capacitance of 10uF (5V inputs), 470μF (3.3, 5V outputs) and 220μF (12V outputs), are shown in the table below. The product series will start into the maximum output capacitance with increased start times. Maximum output capacitance should not exceed: Typical Wave Form:

unit is OFF for logic High and ON for logic LOW). If the control pin is left open (high impedance), the converter will run normally. A suitable application circuit is shown below. Set R1 to be between 320Ω to 800Ω. can be accomplished via a single fixed resistor as shown in Figures 1 and 2. A single fixed resistor can increase or decrease the output voltage depending on its connection. Fixed resistors should have low temperature coefficient to minimize sensitivity to changes in temperature. A single resistor connected from the TRIM pin (pin 3) to the +Vout (pin 4), will decrease the output voltage which is shown in figure 1. A single resistor connected from the TRIM pin (pin 3) to the -Vout (pin 2) will increase the output voltage which is shown in figure 2. Accuracy of adjustment is subject to tolerances of resistors and factory adjusted output accuracy. Vout is equal to the desired output voltage. Figure 1. Trim connections to decrease the output voltage Figure 2. Trim connections to increase the output voltage

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 7 of 17 www.murata.com EFFICIENCY VS LOAD MTC2S0503MC MTC2S0505MC MTC2S0512MC MTC2S1203MC MTC2S1205MC MTC2S1212MC 0 1 02 03 04 05 06 07 08 09 0 1 0 0 Efficiency (%) Load (%)

9 Vin

12 Vin

18 Vin

Efficiency (%) Load (%) 4.5Vin 5Vin 9Vin 0 1 02 03 04 05 06 07 08 09 0 1 0 0 Efficiency (%) Load (%) Efficiency (%) Load (%) 4.5Vin 5Vin 9Vin 0 2 04 06 08 0 1 0 0 Efficiency (%) Load (%) 4.5Vin 5Vin 9Vin 0 1 02 03 04 05 06 07 08 09 0 1 0 0 Efficiency (%) Load (%)

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 8 of 17 www.murata.com EFFICIENCY VS LOAD MTC2S2403MC MTC2S2405MC MTC2S2412MC 0 1 02 03 04 05 06 07 08 09 0 1 0 0 Efficiency (%) Load (%)

24 Vin

36 Vin

0 1 02 03 04 05 06 07 08 09 0 1 0 0 Efficiency (%) Load (%) 0 1 02 03 04 05 06 07 08 09 0 1 0 0 Efficiency (%) Load (%)

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 9 of 17 www.murata.com TEMPERATURE DERATING MTC2S0503MC MTC2S0505MC MTC2S0512MC MTC2S1203MC - 12Vin MTC2S1205MC - 12Vin MTC2S1212MC - 12Vin 100 70 75 80 85 90 95 100 105 Load, % Temperature, C 4.5Vin 5Vin 9Vin 100 70 75 80 85 90 95 100 105 Load, % Temperature, C 4.5Vin 5Vin 9Vin 100 70 75 80 85 90 95 100 105 Load, % Temperature, C 4.5Vin 5Vin 9Vin 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 10 of 17 www.murata.com TEMPERATURE DERATING MTC2S2403MC - 24Vin MTC2S2405MC - 24Vin MTC2S2412MC - 24Vin MTC2S1203MC - 9Vin MTC2S1205MC - 9Vin MTC2S1212MC - 9Vin 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 11 of 17 www.murata.com TEMPERATURE DERATING (Continued) MTC2S2403MC - 18Vin MTC2S2405MC - 18Vin MTC2S2412MC - 18Vin MTC2S1203MC - 18Vin MTC2S1205MC- 18Vin MTC2S1212MC- 18Vin 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 12 of 17 www.murata.com TEMPERATURE DERATING (Continued) MTC2S2403MC- 36Vin MTC2S2405MC- 36Vin MTC2S2412MC- 36Vin 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm 100 70 80 90 100 Load, % Temperature C No Airflow 100lfm 200lfm 400lfm

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 13 of 17 www.murata.com EMC FILTERING AND SPECTRA FILTERING The following table shows the additional input capacitor and input inductor typically required to meet EN 55022 Curve B, Quasi-Peak EMC limit, as shown in the following plots. The following plots show positive and negative quasi peak and CISPR22 Average Limit A (orange line) and Quasi Peak Limit A (blue line) adherence limits. MTC2S0503MC MTC2S0505MC MTC2S0512MC MTC2S1203MC 1.00E+05 1.00E+06 1.00E+07 1.00E+08 dBuV Frequency (Hz) 1.00E+05 1.00E+06 1.00E+07 1.00E+08 dBuV Frequency (Hz) 1.00E+05 1.00E+06 1.00E+07 1.00E+0 dBuV Frequency (Hz) 1.00E+05 1.00E+06 1.00E+07 1.00E+08 dBuV Frequency (Hz) Inductor Capacitor Part Number L, μH SMD Through Hole C1, μF Recommended Part Number C2, pF Recommended Part Number MTC2S0503MC 6.8 84682C 13R682C 10 & 4.7 GRM31CR71E106KA12L & GCM21BR71C475KA73L Not required MTC2S0505MC 4.7 84472C 13R472C 10 & 4.7 GRM31CR71E106KA12L & GCM21BR71C475KA73L Not required MTC2S0512MC 4.7 84472C 13R472C 10 GRM31CR71E106KA12L Not required MTC2S1203MC 4.7 84472C 13R472C 10 GRM31CR71E106KA12L Not required MTC2S1205MC 4.7 84472C 13R472C 10 GRM31CR71E106KA12L Not required MTC2S1212MC 4.7 84472C 13R472C 10 GRM31CR71E106KA12L Not required MTC2S2403MC 10 84103C 13R103C 10 GCM32EC71H106KA03L 47 DK11XEA470K86RBH01 MTC2S2405MC 10 84103C 13R103C 10 GCM32EC71H106KA03L 68 DE11XRA680KN4AP01F MTC2S2412MC 10 84103C 13R103C 10 GCM32EC71H106KA03L 47 DK11XEA470K86RBH01 DC DC L

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 14 of 17 www.murata.com EMC FILTERING AND SPECTRA (Continued) MTC2S1205MC MTC2S1212MC MTC2S2403MC MTC2S2405MC MTC2S2412MC 1.00E+05 1.00E+06 1.00E+07 1.00E+08 dBuV Frequency (Hz) 1.00E+05 1.00E+06 1.00E+07 1.00E+08 dBuV Frequency (Hz) 1.00E+05 1.00E+06 1.00E+07 1.00E+08 dBuV Frequency (Hz) 1.00E+05 1.00E+06 1.00E+07 1.00E+08 dBuV Frequency (Hz) 1.00E+05 1.00E+06 1.00E+07 1.00E+08 dBuV Frequency (Hz)

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 15 of 17 www.murata.com PACKAGE SPECIFICATIONS Mechanical Dimensions Pin Connections Pin Function 1 +Vin 2 -Vout

3 Trim

5 Ctrl

Recommended Footprint Details All dimensions in mm(inches), Controlling dimension is mm. Tolerances (unless otherwise stated) ±0.15(0.006). Components shown for reference only. Weight: 3.6g 14.99 [0.590] 14.22 [0.560] SEATING PLANE S x6 PINS x6 PINS x6 PINS 0.10 S MTC2SXXXXMC XYYWW x6 PLACES 1.91 [0.075] x6 PLACES 1.37 [0.054] 1.52 [0.060] RECOMMENDED ISOLATION BARRIER 1.52 [0.060] 9.91 [0.390] 12.45 [0.490] 0.25 [0.010] 12.70 [0.500] 0.25 [0.010]

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 16 of 17 www.murata.com TAPE & REEL SPECIFICATIONS REEL OUTLINE DIMENSIONS REEL PACKAGING DETAILS TAPE OUTLINE DIMENSIONS 28.0 [1.102] 12.2 [0.480] 4.0 [0.157] 28.4 [1.118] 32.0±0.3 DIRECTION OF UNREELING COVER TAPE 14.2±0.1 38.4 [1.512] MAX # 1.50 [0.059] MIN Ø20.20 [Ø0.795] MIN Ø330 [13.000] MAX OR Ø177.8 [7.000] MAX Ø [ 5.319 ]13.5 12.8 Ø5.043 100 [3.937] MIN LEADER SECTION 400 [15.748] MIN GOODS ENCLOSURE SECTION TRAILER SECTION 160 [6.299] MIN Tape & Reel specifications shall conform with current EIA-481 standard Unless otherwise stated all dimensions in mm(inches) Controlling dimension is mm # Measured at hub Tape & Reel specifications shall conform with current EIA-481 standard Unless otherwise stated all dimensions in mm(inches) ±0.1mm (±0.004 Inches) Controlling dimension is mm Components shall be orientated within the carrier tape as indicated # Measured on a plane 0.3mm above the bottom pocket Carrier tape pockets shown are illustrative only - Refer to carrier tape diagram for actual pocket details. Reel Quantity: 7” - 30 or 13” - 150

Isolated 2W SM 2:1 Input Single Output DC-DC Converters KDC_MTC2.F01 Page 17 of 17 Murata Power Solutions (Milton Keynes) Ltd. makes no representation that the use of its products in the circuits described herein, or the use of other technical information contained herein, will not infringe upon existing or future patent rights. The descriptions contained herein do not imply the granting of licenses to make, use, or sell equipment constructed in accordance therewith. Specifications are subject to change without notice. © 2022 Murata Power Solutions (Milton Keynes) Ltd. This product is subject to the following operating requirements and the Life and Safety Critical Application Sales Policy: Refer to: https://www.murata.com/en-eu/products/power/requirements www.murata.com DISCLAIMER Unless otherwise stated in the datasheet, all products are designed for standard commercial and industrial applications and NOT for safety-critical and/or life-critical applications. Particularly for safety-critical and/or life-critical applications, i.e. applications that may directly endanger or cause the loss of life, inflict bodily harm and/or loss or severe damage to equipment/property, and severely harm the environment, a prior explicit written approval from Murata is strictly required. Any use of Murata standard prod- ucts for any safety-critical, life-critical or any related applications without any prior explicit written approval from Murata shall be deemed unauthorised use. These applications include but are not limited to:

  • Aircraft equipment
  • Aerospace equipment
  • Undersea equipment
  • Power plant control equipment
  • Medical equipment
  • Transportation equipment (automobiles, trains, ships, etc.)
  • Traffic signal equipment
  • Disaster prevention / crime prevention equipment
  • Data Processing equipment Murata makes no express or implied warranty, representation, or guarantee of suitability, fitness for any particular use/purpose and/or compatibility with any applica- tion or device of the buyer, nor does Murata assume any liability whatsoever arising out of unauthorised use of any Murata product for the application of the buyer. The suitability, fitness for any particular use/purpose and/or compatibility of Murata product with any application or device of the buyer remain to be the responsibility and liability of the buyer. Buyer represents and agrees that it has all the necessary expertise to create and implement safeguards that anticipate dangerous consequences of failures, moni- tor failures and their consequences, lessen the likelihood of failures that might cause harm, and take appropriate remedial actions. Buyer will fully indemnify and hold Murata, its affiliated companies, and its representatives harmless against any damages arising out of unauthorised use of any Murata products in any safety-critical and/ or life-critical applications. Remark: Murata in this section refers to Murata Manufacturing Company and its affiliated companies worldwide including, but not limited to, Murata Power Solutions.